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一种合成具有聚(N-异丙基丙烯酰胺)核和可控多胺壳的响应性核壳纳米凝胶的新方法。

A Novel Approach for the Synthesis of Responsive Core-Shell Nanogels with a Poly(N-Isopropylacrylamide) Core and a Controlled Polyamine Shell.

作者信息

Harsányi Anna, Kardos Attila, Xavier Pinchu, Campbell Richard A, Varga Imre

机构信息

Institute of Chemistry, Eötvös Loránd University, Pázmány P. s. 1/A, 1117 Budapest, Hungary.

Department of Chemistry, University J. Selyeho, 945 01 Komárno, Slovakia.

出版信息

Polymers (Basel). 2024 Sep 13;16(18):2584. doi: 10.3390/polym16182584.

Abstract

Microgel particles can play a key role, e.g., in drug delivery systems, tissue engineering, advanced (bio)sensors or (bio)catalysis. Amine-functionalized microgels are particularly interesting in many applications since they can provide pH responsiveness, chemical functionalities for, e.g., bioconjugation, unique binding characteristics for pollutants and interactions with cell surfaces. Since the incorporation of amine functionalities in controlled amounts with predefined architectures is still a challenge, here, we present a novel method for the synthesis of responsive core-shell nanogels ( < 100 nm) with a poly(-isopropylacrylamide) (pNIPAm) core and a polyamine shell. To achieve this goal, a surface-functionalized pNIPAm nanogel was first prepared in a semi-batch precipitation polymerization reaction. Surface functionalization was achieved by adding acrylic acid to the reaction mixture in the final stage of the precipitation polymerization. Under these conditions, the carboxyl functionalities were confined to the outer shell of the nanogel particles, preserving the core's temperature-responsive behavior and providing reactive functionalities on the nanogel surface. The polyamine shell was prepared by the chemical coupling of polyethyleneimine to the nanogel's carboxyl functionalities using a water-soluble carbodiimide (EDC) to facilitate the coupling reaction. The efficiency of the coupling was assessed by varying the EDC concentration and reaction temperature. The molecular weight of PEI was also varied in a wide range ( = 0.6 to 750 kDa), and we found that it had a profound effect on how many polyamine repeat units could be immobilized in the nanogel shell. The swelling and the electrophoretic mobility of the prepared core-shell nanogels were also studied as a function of pH and temperature, demonstrating the successful formation of the polyamine shell on the nanogel core and its effect on the nanogel characteristics. This study provides a general framework for the controlled synthesis of core-shell nanogels with tunable surface properties, which can be applied in many potential applications.

摘要

微凝胶颗粒可发挥关键作用,例如在药物递送系统、组织工程、先进(生物)传感器或(生物)催化中。胺功能化微凝胶在许多应用中特别有趣,因为它们可提供pH响应性、用于生物共轭等的化学功能、对污染物的独特结合特性以及与细胞表面的相互作用。由于以预定义结构控制胺功能基团的掺入量仍然是一个挑战,在此,我们提出一种合成具有聚(N-异丙基丙烯酰胺)(pNIPAm)核和聚胺壳的响应性核壳纳米凝胶(<100 nm)的新方法。为实现这一目标,首先在半间歇沉淀聚合反应中制备了表面功能化的pNIPAm纳米凝胶。在沉淀聚合的最后阶段,通过向反应混合物中加入丙烯酸来实现表面功能化。在这些条件下,羧基功能基团被限制在纳米凝胶颗粒的外壳中,保留了核的温度响应行为,并在纳米凝胶表面提供了反应性功能。使用水溶性碳二亚胺(EDC)促进偶联反应,通过将聚乙烯亚胺化学偶联到纳米凝胶的羧基功能基团上来制备聚胺壳。通过改变EDC浓度和反应温度来评估偶联效率。聚乙烯亚胺的分子量也在很宽的范围内变化(=0.6至750 kDa),我们发现它对可固定在纳米凝胶壳中的聚胺重复单元数量有深远影响。还研究了制备的核壳纳米凝胶的溶胀和电泳迁移率随pH和温度的变化,证明了在纳米凝胶核上成功形成了聚胺壳及其对纳米凝胶特性的影响。这项研究为可控合成具有可调表面性质的核壳纳米凝胶提供了一个通用框架,可应用于许多潜在应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e3d/11435478/e920aa77f3f6/polymers-16-02584-sch001.jpg

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